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A New Hybrid Implicit–Explicit FDTD Method for Local Subgridding in Multiscale 2-D TE Scattering Problems

机译:多尺度二维TE散射问题中局部细分的新的隐式-显式混合FDTD方法

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The conventional finite-difference time-domain (FDTD) method with staggered Yee scheme does not easily allow including thin material layers, especially so if these layers are highly conductive. This paper proposes a novel subgridding technique for 2-D problems, based on a hybrid implicit–explicit scheme, which efficiently copes with this problem. In the subgrid, the new method collocates field components such that the thin layer boundaries are defined unambiguously. Moreover, aspect ratios of more than a million do not impair the stability of the method and allow for very accurate predictions of the skin effect. The new method retains the Courant limit of the coarse Yee grid and is easily incorporated into existing FDTD codes. A number of illustrative examples, including scattering by a metal grating, demonstrate the accuracy and stability of the new method.
机译:具有交错Yee方案的常规有限差分时域(FDTD)方法不容易允许包括薄材料层,尤其是如果这些层具有高导电性的话。本文基于混合隐式-显式方案,提出了一种用于二维问题的新型细分技术,该技术可以有效地解决该问题。在子网格中,新方法将字段分量并置,以便明确定义薄层边界。此外,大于一百万的纵横比不会损害方法的稳定性,并且可以非常准确地预测出皮肤效果。新方法保留了粗糙Yee网格的Courant限制,可以轻松地合并到现有FDTD代码中。许多示例性示例,包括通过金属光栅的散射,证明了该新方法的准确性和稳定性。

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